Nonlinear stochastic interacting dynamics and complexity of financial gasket fractal-like lattice percolation |
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Authors: | Wei Zhang Jun Wang |
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Affiliation: | School of Science, Beijing Jiaotong University, Beijing 100044, PR China |
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Abstract: | A novel nonlinear stochastic interacting price dynamics is proposed and investigated by the bond percolation on Sierpinski gasket fractal-like lattice, aim to make a new approach to reproduce and study the complexity dynamics of real security markets. Fractal-like lattices correspond to finite graphs with vertices and edges, which are similar to fractals, and Sierpinski gasket is a well-known example of fractals. Fractional ordinal array entropy and fractional ordinal array complexity are introduced to analyze the complexity behaviors of financial signals. To deeper comprehend the fluctuation characteristics of the stochastic price evolution, the complexity analysis of random logarithmic returns and volatility are preformed, including power-law distribution, fractional sample entropy and fractional ordinal array complexity. For further verifying the rationality and validity of the developed stochastic price evolution, the actual security market dataset are also studied with the same statistical methods for comparison. The empirical results show that this stochastic price dynamics can reconstruct complexity behaviors of the actual security markets to some extent. |
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Keywords: | Nonlinear stochastic complex interacting dynamics Sierpinski gasket fractal-like lattice Percolation Power-law distribution Fractional sample entropy Fractional ordinal array complexity |
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